日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

MYO5A-mediated stabilization promotes the acquisition of fusion competence in sealed autophagosomes.

MYO5A介导的稳定作用促进了封闭自噬体获得融合能力。

Nambiar Akshaya, Martin René, Tomar Kamakshi, Knölker Hans-Joachim, Koushika Sandhya P, K Subramaniam, Manjithaya Ravi

The autophagy-specific exocyst subcomplex contributes to phagophore assembly site integrity by promoting phagophore expansion

自噬特异性胞吐复合体亚复合物通过促进吞噬泡扩张来维持吞噬泡组装位点的完整性。

Kumari, Ruchika; Nath, Titikhya; Pflaum, Jeremy; R, Inchara; Vinay, Sannannagari; Wilfling, Florian; Manjithaya, Ravi

Autophagy-related protein Atg11 is essential for microtubule-mediated chromosome segregation.

自噬相关蛋白Atg11对于微管介导的染色体分离至关重要

Reza Md Hashim, Aggarwal Rashi, Verma Jigyasa, Podh Nitesh Kumar, Chowdhury Ratul, Mehta Gunjan, Manjithaya Ravi, Sanyal Kaustuv

Differential response of neurons to autophagy modulation in Huntington's disease.

亨廷顿病中神经元对自噬调节的不同反应

Sharma Ankit, Rao Sushma, Manjithaya Ravi, Sheeba Vasu

Astroglia proliferate upon the biogenesis of tunneling nanotubes via α-synuclein dependent transient nuclear translocation of focal adhesion kinase

星形胶质细胞通过 α-突触核蛋白依赖的粘着斑激酶瞬时核转位,在隧道纳米管的生物发生过程中增殖

Abinaya Raghavan, Rachana Kashyap, P Sreedevi, Sneha Jos, Suchana Chatterjee, Ann Alex, Michelle Ninochka D'Souza, Mridhula Giridharan, Ravi Muddashetty, Ravi Manjithaya, Sivaraman Padavattan, Sangeeta Nath

A genetically-encoded fluorescence-based reporter to spatiotemporally investigate mannose-6-phosphate pathway

基于基因编码荧光的报告基因,用于时空研究甘露糖-6-磷酸途径

Mallika Bhat, Akshaya Nambiar, Lakshmi Edakkandiyil, Irine Maria Abraham, Ritoprova Sen, Mamta Negi, Ravi Manjithaya

Restoration of Sleep and Circadian Behavior by Autophagy Modulation in Huntington's Disease

通过自噬调节恢复亨廷顿氏病患者的睡眠和昼夜节律行为

Ankit Sharma, Kavyashree Narasimha, Ravi Manjithaya, Vasu Sheeba

Leaderless secretory proteins of the neurodegenerative diseases via TNTs: a structure-function perspective

通过TNTs介导的神经退行性疾病的无前导分泌蛋白:结构-功能视角

Padmanabhan, Sreedevi; Manjithaya, Ravi

Autophagy promotes cell survival by maintaining NAD levels

自噬通过维持NAD水平来促进细胞存活。

Tetsushi Kataura ,Lucia Sedlackova ,Elsje G Otten ,Ruchika Kumari ,David Shapira ,Filippo Scialo ,Rhoda Stefanatos ,Kei-Ichi Ishikawa ,George Kelly ,Elena Seranova ,Congxin Sun ,Dorothea Maetzel ,Niall Kenneth ,Sergey Trushin ,Tong Zhang ,Eugenia Trushina ,Charles C Bascom ,Ryan Tasseff ,Robert J Isfort ,John E Oblong ,Satomi Miwa ,Michael Lazarou ,Rudolf Jaenisch ,Masaya Imoto ,Shinji Saiki ,Manolis Papamichos-Chronakis ,Ravi Manjithaya ,Oliver D K Maddocks ,Alberto Sanz ,Sovan Sarkar ,Viktor I Korolchuk

Mitophagy and Neurodegeneration: Between the Knowns and the Unknowns

线粒体自噬与神经退行性疾病:已知与未知之间

Jetto, Cuckoo Teresa; Nambiar, Akshaya; Manjithaya, Ravi